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dc.contributor.authorDahl Halvarsson, Martin
dc.date.accessioned2019-03-01T09:08:46Z
dc.date.available2019-03-01T09:08:46Z
dc.date.issued2019-03-01
dc.identifier.isbn978-­91-­7833-­353-­0 (PDF)
dc.identifier.isbn978-­91-­7833-­352-­3 (PRINT)
dc.identifier.urihttp://hdl.handle.net/2077/58487
dc.description.abstractMany genetic diseases inherited in a dominant fashion have a complex pathological pattern. TOR1A mediated Dystonia-1 (DYT1) is an example of incomplete penetrance, affecting only a third of the carriers. DYT1 is an early-onset neurological disease affecting dopamine release from substantia nigra to the striatum in the brain, causing muscle tremors in muscles. We have identified the first cases of homozygous TOR1A mutation together with a new TOR1A mutation all of them showing DYT1 symptoms from birth. The main part of this thesis has gone to describing the skeletal myosin myopathies Laing early-onset myopathy (MPD1) and myosin storage myopathy (MSM). The diseases are known for causing slow progressive muscle atrophy with huge variations on progression rate. Individuals within the same family can exhibit wildly different speed of atrophy. We show with cell assays that various MYH7, which all leads to myosin storage myopathy, are caused by different mechanisms. We also show that Drosophila melanogaster, fruit flies, carrying MPD1 and MSM mutations becomes resilient when overexpressing the enzymatic ubiquitin E3-ligase TRIM32. The enzyme is a homolog to the human MuRF enzyme, known to mediate myosin breakdown. Lastly we have found a family where a mutation in the myosin folding chaperone UNC-45B drives the heart condition hypertrophic cardiomyopathy. UNC-45B have been shown to be important for embryonic heart development but never been found to be associated with any muscle disease before.sv
dc.language.isoengsv
dc.relation.haspartI. Halvarsson D.M., Pokrzywa M., Rauthan M., Pilon M., Tajsharghi H. Myosin Storage Myopathy in C. elegans and Human Cultured Muscle Cells. PLoS One, 2017 Jan 26;12(1) ::doi:: 10.1371/journal.pone.0170613sv
dc.relation.haspartII. Kariminejad A., Halvarsson D.M., Ravenscroft G., Afroozan F., Keshavarz E., Goullée H., Davis M.R., Faraji Zonooz M., Najmabadi H., Laing N.G., Tajsharghi H. TOR1A variants cause severe arthrogryposis with developmental delay, strabismus and tremor. Journal of Brain, 2017 Sep 23; 140 (11): ::doi:: 10.1093/brain/awx230sv
dc.relation.haspartIII. Halvarsson D.M., Olivé M., Pokrzywa M., Ejeskär K., Palmer R.H., Uv A.E., Tajsharghi H. Drosophila model of myosin myopathy rescued by overexpression of a TRIM-protein family member. PNAS, 2018 Jul 10;115(28) ::doi:: 10.1073/pnas.1800727115sv
dc.relation.haspartIV. Halvarsson D.M., Olivé M., Pokrzywa M., Norum M., Ejeskär K., Palmer R.H., Uv A.E., Tajsharghi H. Drosophila model of myosin storage myopathy rescued by overexpression of a TRIM-protein family member. Submitted Manuscript, Feb 2019sv
dc.relation.haspartV. Emrahi L., Halvarsson D.M., Moselmi A.R., Hesse C, Goullée H., Laing G.N., Tajsharghi H. UNC45B, a co-chaperone required for proper folding and accumulation of myosin, as a novel gene associated with hypertrophic cardiomyopathy. Manuscriptsv
dc.subjectMusclessv
dc.subjectMyosinsv
dc.subjectMYH7sv
dc.subjectMyosin storage myopathysv
dc.subjectLaing early-onset myopathysv
dc.subjectDrosophilasv
dc.subjectTOR1Asv
dc.subjectDYT1sv
dc.subjectHCMsv
dc.subjectheart diseasesv
dc.titleStudy the role of patient-specific mutations by genetic disease modelingsv
dc.title.alternativeFrom gene to function; A study to understand musclessv
dc.typetexteng
dc.type.svepDoctoral thesiseng
dc.gup.mailmartin.dahl@gu.sesv
dc.type.degreeDoctor of Philosophy (Medicine)sv
dc.gup.originUniversity of Gothenburg. Sahlgrenska Academysv
dc.gup.departmentInstitute of Biomedicine. Department of Pathologysv
dc.gup.defenceplaceFredagen den 22 Mars 2019, kl. 13.00, Hörsal Arvid Carlsson, Academicum, Medicinaregatan 3, Göteborgsv
dc.gup.defencedate2019-03-22
dc.gup.dissdb-fakultetSA


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